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Self-configuration and self-optimization in LTE-advanced heterogeneous networks

机译:LTE先进异构网络中的自配置和自优化

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摘要

Self-organizing network, or SON, technology, which is able to minimize human intervention in networking processes, was proposed to reduce the operational costs for service providers in future wireless systems. As a cost-effective means to significantly enhance capacity, heterogeneous deployment has been defined in the 3GPP LTEAdvanced standard, where performance gains can be achieved through increasing node density with low-power nodes, such as pico, femto, and relay nodes. The SON has great potential for application in future LTE-Advanced heterogeneous networks, also called HetNets. In this article, state-of-the-art research on self-configuring and self-optimizing HetNets are surveyed, and their corresponding SON architectures are introduced. In particular, we discuss the issues of automatic physical cell identifier assignment and radio resource configuration in HetNets based on selfconfiguring SONs. As for self-optimizing SONs, we address the issues of optimization strategies and algorithms for mobility management and energy saving in HetNets. At the end of the article, we show a testbed designed for evaluating SON technology, with which the performance gain of SON algorithms is demonstrated.
机译:为了减少未来无线系统中服务提供商的运营成本,提出了一种自组织网络或SON技术,该技术可以最大程度地减少人为干预网络过程。作为显着提高容量的一种经济有效的方法,异构部署已在3GPP LTEAdvanced标准中定义,该标准可通过提高低功率节点(如微微节点,毫微微节点和中继节点)的节点密度来实现性能提升。 SON在未来的LTE-Advanced异构网络(也称为HetNets)中具有巨大的应用潜力。本文对自配置和自优化的HetNet进行了研究,并介绍了其相应的SON体系结构。特别是,我们讨论了基于自我配置SON在HetNets中自动进行物理小区标识符分配和无线电资源配置的问题。关于自我优化的SON,我们解决了HetNets中用于移动性管理和节能的优化策略和算法的问题。在文章的最后,我们展示了一个用于评估SON技术的测试平台,并通过该测试平台展示了SON算法的性能增益。

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